石墨烯
自愈水凝胶
材料科学
多孔性
氧化物
微观结构
化学工程
热液循环
吸附
纳米技术
复合材料
电导率
化学
高分子化学
有机化学
物理化学
工程类
冶金
作者
Kimal Chandula Wasalathilake,Dilini Galpaya,Godwin A. Ayoko,Cheng Yan
出处
期刊:Carbon
[Elsevier BV]
日期:2018-05-21
卷期号:137: 282-290
被引量:68
标识
DOI:10.1016/j.carbon.2018.05.036
摘要
Graphene hydrogel (GH) has attracted increasing attention in energy storage and conversion, pollutant adsorption, catalysis, sensors and tissue engineering applications. However, a good understanding of the structure-property relationship is essential to precisely tune their properties. In this work, a pH assisted hydrothermal process was used to synthesize reduced graphene oxide (rGO) hydrogels with different three-dimensional (3D) porous structures. We systematically investigated the structure-property relationships in the GH, with a focus on the effects of geometrical dimensions of the pore structure. We found that the best mechanical properties were achieved in a compact microstructure consisting of small pores but thick walls. Despite having a lower C/O ratio, the compact structure gave rise to the highest electrical conductivity, attributed to the highly interconnected 3D porous structure providing conductive pathways. On the other hand, the hydrogels prepared under basic conditions exhibited higher C/O ratio but lower mechanical and electrical properties due to the disordered pore structure with large pores and thin walls.
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